Direct Feedback Regulation of E2, T, and hCG in the Brain–Pituitary–Gonad Axis of Japanese Eel (Anguilla japonica) during Artificial Maturation

Fishes Pub Date : 2024-07-05 DOI:10.3390/fishes9070265
Xiaojian Lai, Shuai Peng, Zhaoren Bai, Le Cao, Huixuan Huang, Yonghua Jiang, Yilei Wang
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Abstract

The feedback regulatory effects of estrogen (E2) and androgen (T) on the gonadotropin-releasing hormone (GnRH) and gonadotropin (GtH) within the brain–pituitary–gonad (BPG) axis in eels with undeveloped ovaries were investigated through in vivo studies. However, the regulatory role of the BPG axis only became apparent during ovary development in the migratory stage. To further elucidate the direct feedback regulation of the BPG axis, female Anguilla japonica underwent artificial induction of vitellogenesis, and the regulation of BPG axis tissues by GtH (human chorionic gonadotropin, hCG), E2, and T was explored through in vitro exposure. The mRNA expression levels of GnRH (mGnRH), GtH (fshb and lhb), and steroid biosynthesis enzymes (cyp11a1, hsd3b, cyp17a1, and cyp17a2) in the diencephalon, pituitary, and ovary, respectively, were determined. The results showed that the expression level of mGnRH in the diencephalon was significantly downregulated by 0.1 IU/mL hCG but upregulated by both 1 nM E2 and higher concentrations of T, suggesting a direct positive feedback regulation of E2 on mGnRH. In the pituitary, the expression levels of fshb and lhb were upregulated by E2, while fshb was suppressed by T. In the ovaries, the expression of cyp11a1 and hsd3b was upregulated by 1 nM E2, whereas T exposure resulted in an opposite effect. Cyp17a1 mRNA levels did not differ significantly with E2 treatment but were upregulated by 1 nM T. These findings suggest that low concentrations of E2 exhibited positive feedback regulation on all three levels (diencephalon, pituitary, and ovary) of the BPG axis, while T showed weaker and differential feedback regulation in BPG axis tissues. Overall, this study’s results revealed the direct feedback regulation of hCG, E2, and T on the BPG axis in eels, a phylogenetic base of teleosts.
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日本鳗鲡人工成熟过程中脑-垂体-性腺轴对 E2、T 和 hCG 的直接反馈调控
通过体内研究,探讨了雌激素(E2)和雄激素(T)对未发育卵巢的鳗鱼脑-垂体-性腺(BPG)轴中促性腺激素释放激素(GnRH)和促性腺激素(GtH)的反馈调节作用。然而,BPG轴的调控作用仅在卵巢发育的洄游阶段才变得明显。为了进一步阐明BPG轴的直接反馈调控,雌性鳗鲡接受了卵黄发生的人工诱导,并通过体外暴露探讨了GtH(人绒毛膜促性腺激素,hCG)、E2和T对BPG轴组织的调控。分别测定了GnRH(mGnRH)、GtH(fshb和lhb)和类固醇生物合成酶(cyp11a1、hsd3b、cyp17a1和cyp17a2)在间脑、垂体和卵巢中的mRNA表达水平。结果显示,mGnRH在间脑中的表达水平在0.1 IU/mL hCG的作用下显著下调,但在1 nM E2和较高浓度T的作用下均上调,这表明E2对mGnRH有直接的正反馈调节作用。在垂体中,E2会上调fshb和lhb的表达水平,而T则会抑制fshb的表达。这些研究结果表明,低浓度的 E2 对 BPG 轴的所有三个水平(间脑、垂体和卵巢)都有正反馈调节作用,而 T 对 BPG 轴组织的反馈调节作用较弱,且存在差异。总之,该研究结果揭示了 hCG、E2 和 T 对鳗鲡 BPG 轴的直接反馈调节作用。
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